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Ultrasonic characterization of dry and wet nanosecond laser ablation of solids

机译:固体干,湿纳秒激光烧蚀的超声表征

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摘要

Single-shot nanosecond laser ablation of stainless steel and copper surfaces in ambient air and liquid water environment was studied by contact broadband ultrasonics in the important laser intensity range of 6-450 GW/cm(2), covering both regimes of surface phase explosion and formation of sub-critical ablative plasma via optical breakdown in the corresponding dense ablative plume. Similar dependences of ablative plasma pressure were obtained for the dry and wet ablation conditions, differing in their ultrasonic pulse amplitudes by the factor similar to 5 and in their pulsewidths by the factor of 1.3 (copper) and 1.6 (steel) for the wet ablation because of the dynamic water-confinement effect. Excepting the confinement effect, these results indicate the similar conditions for pressure generation via sub-critical plasma formation both for the air and water environments, enlightening promising applications of laser ablation for liquid-assisted laser peening and generation of nanoparticles in liquids. (C) 2018 Elsevier Ltd. All rights reserved.
机译:通过接触宽带超声在6-450 GW / cm(2)的重要激光强度范围内研究了不锈钢和铜在​​环境空气和液态水环境中的单次纳秒激光烧蚀,涵盖了表面相爆炸和通过相应的致密烧蚀羽流中的光学击穿形成亚临界烧蚀等离子体。对于干式和湿式烧蚀条件,获得了类似的烧蚀等离子体压力依赖性,对于湿式烧蚀,它们的超声脉冲幅度相差5倍,而脉冲宽度的相差1.3倍(铜)和1.6倍(钢),这是因为限制水的动态效果。除局限作用外,这些结果表明在空气和水环境中通过亚临界等离子体形成压力的相似条件,启发了激光烧蚀在液体辅助激光喷丸和液体中产生纳米粒子方面的有希望的应用。 (C)2018 Elsevier Ltd.保留所有权利。

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